Silicon photonic integrated circuits with electrically programmable non-volatile memory functions

Conventional silicon photonic integrated circuits do not normally possess memory functions, which require on-chip power in order to maintain circuit states in tuned or field-configured switching routes. In this context, we present an electrically programmable add/drop microring resonator with a wave...

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Veröffentlicht in:Optics express 2016-09, Vol.24 (19), p.21744-21751
Hauptverfasser: Song, J-F, Lim, A E-J, Luo, X-S, Fang, Q, Li, C, Jia, L X, Tu, X-G, Huang, Y, Zhou, H-F, Liow, T-Y, Lo, G-Q
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Sprache:eng
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Zusammenfassung:Conventional silicon photonic integrated circuits do not normally possess memory functions, which require on-chip power in order to maintain circuit states in tuned or field-configured switching routes. In this context, we present an electrically programmable add/drop microring resonator with a wavelength shift of 426 pm between the ON/OFF states. Electrical pulses are used to control the choice of the state. Our experimental results show a wavelength shift of 2.8 pm/ms and a light intensity variation of ~0.12 dB/ms for a fixed wavelength in the OFF state. Theoretically, our device can accommodate up to 65 states of multi-level memory functions. Such memory functions can be integrated into wavelength division mutiplexing (WDM) filters and applied to optical routers and computing architectures fulfilling large data downloading demands.
ISSN:1094-4087
1094-4087
DOI:10.1364/OE.24.021744